KEGG   Phycisphaera mikurensis: PSMK_29650Help
Entry
PSMK_29650        CDS       T01800                                 

Definition
hypothetical protein
Orthology
K03405  
magnesium chelatase subunit I [EC:6.6.1.1]
Organism
phm  Phycisphaera mikurensis
Pathway
Porphyrin and chlorophyll metabolism
Metabolic pathways
Biosynthesis of secondary metabolites
Brite
KEGG Orthology (KO) [BR:phm00001]
 Metabolism
  Metabolism of cofactors and vitamins
   00860 Porphyrin and chlorophyll metabolism
    PSMK_29650
Enzymes [BR:phm01000]
 6. Ligases
  6.6  Forming nitrogen-D-metal bonds
   6.6.1  Forming coordination complexes
    6.6.1.1  magnesium chelatase
     PSMK_29650
BRITE hierarchy
SSDB OrthologParalogGene clusterGFIT
Motif Motif
Other DBs
NCBI-GI: 
NCBI-GeneID: 
UniProt: 
Position
complement(3514287..3515747)
Genome map
AA seq 486 aa AA seqDB search
MPAETPSSSAPDVATLGRLKEHGHRVRTVKQELRENLIARLKDGGPVFPGVRGYDDTVVP
QVVHAIFSRHDMLFLGLRGQAKTRMIRQLPKLLDAWCPVVAGTDVPDDPIQPMTGAARRI
VAERGDETPIRWMHRSERYSEKLATPDVTIADLIGEIDIVKYAQGRELSDESTMHFGLIP
RSNRGIFAVNELPDLSPRIQVGLFNVLEERDVQIRGYPVRLNLDVCLVFSANPEDYTNRG
RIVTPLKDRIGSVVRTHYPRGIDEAARITAENAWISRRDEPGAESLTAGVPAIDVPEYLR
RTLEVTIAQARGSSHINQASGVSVRTSIACLETLVSSAERRGILTGEQRVVPRVCDLMHL
TTATRGKIELMMSDDGDATEDKLVESLLGEAVKSVFDTVAEVDEFENVAEAFESGLKLSV
GDEVSAAEQIASMKHVDGLLPAAVDMAERLGMDPEDDQAIASAGEFVLEALYVHKRLSKA
GNKYTR
NT seq 1461 nt NT seq  +upstreamnt  +downstreamnt
atgcccgccgaaacgccctcttcctccgctcccgacgtcgccaccctcggccggctcaaa
gagcacggccaccgcgtccgcaccgtcaagcaggagctccgcgagaacctcatcgcccgc
ctgaaggacggcggcccggtgttcccgggcgtccgcggctacgacgacaccgtcgtcccc
caggtcgtccacgcgatcttcagccggcacgacatgctcttcctgggtctgcgtggccag
gccaagacgcggatgatccgccagctgcccaagctgctcgacgcgtggtgccccgtcgtc
gccggcaccgacgtgcccgacgacccgatccagccgatgaccggcgccgcgaggcgcatc
gtcgccgagcggggcgacgaaacgccgatccgctggatgcaccgcagcgagcggtactcc
gagaagctcgccacgcccgacgtcaccatcgccgacctgatcggcgagatcgacatcgtc
aagtacgcccagggccgcgaactcagcgacgagtcgacgatgcacttcggcctgatcccg
cgctccaaccgcggcatcttcgccgtcaacgagctgcccgacctgtcgccgcggatccag
gtcggcctcttcaacgtgctcgaggagcgcgacgtccagatccgcggctaccccgtgcgg
ctcaacctcgacgtctgcctcgtgttctcggccaaccccgaggactacaccaaccgcggc
cgcatcgtcacgcccctgaaggaccggatcggcagcgtcgtccgcacgcactacccccgc
ggcatcgacgaggccgcgcggatcaccgccgagaacgcgtggatctcgcgccgggacgag
cccggcgccgagtcgctcaccgccggcgtgcccgccatcgacgtgcccgagtacctccgc
cgcaccctcgaggtgacgatcgcccaggcccgcggatccagccacatcaaccaggccagc
ggcgtctcggtccgcacctccatcgcctgcctcgagacgctggtctcctccgcggagcgg
cgtggcatcctcaccggggagcagcgcgtcgtcccgcgggtctgcgatctcatgcacctg
acgaccgccacccgcggaaagatcgagctgatgatgagcgacgacggcgacgccaccgag
gacaagctcgtggagtcgctgctgggcgaagccgtcaagagcgtgttcgacaccgttgcc
gaggtggacgagttcgagaacgtggcggaggccttcgagagcggcctgaagctcagcgtc
ggggacgaggtctccgccgccgagcagatcgcgtcgatgaagcacgtcgacgggctgctg
cccgccgcggtcgacatggccgagcggctgggcatggaccccgaggacgaccaggcgatc
gccagcgccggcgagttcgtgctcgaggcgctgtacgtgcacaagcggctgagcaaggcc
gggaacaagtacacgcggtag

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